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/* mga_drv.c -- Matrox G200/G400 driver -*- linux-c -*-
 * Created: Mon Dec 13 01:56:22 1999 by jhartmann@precisioninsight.com
 *
 * Copyright 1999 Precision Insight, Inc., Cedar Park, Texas.
 * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California.
 * All Rights Reserved.
 *
 * Permission is hereby granted, free of charge, to any person obtaining a
 * copy of this software and associated documentation files (the "Software"),
 * to deal in the Software without restriction, including without limitation
 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
 * and/or sell copies of the Software, and to permit persons to whom the
 * Software is furnished to do so, subject to the following conditions:
 *
 * The above copyright notice and this permission notice (including the next
 * paragraph) shall be included in all copies or substantial portions of the
 * Software.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
 * VA LINUX SYSTEMS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
 * OTHER DEALINGS IN THE SOFTWARE.
 *
 * Authors:
 *    Rickard E. (Rik) Faith <faith@valinux.com>
 *    Gareth Hughes <gareth@valinux.com>
 */

#include "drmP.h"
#include "drm.h"
#include "mga_drm.h"
#include "mga_drv.h"

#include "drm_pciids.h"

static int mga_driver_device_is_agp(drm_device_t * dev);

static struct pci_device_id pciidlist[] = {
	mga_PCI_IDS
};

static int probe(struct pci_dev *pdev, const struct pci_device_id *ent);
static struct drm_driver driver = {
	.driver_features =
	    DRIVER_USE_AGP | DRIVER_USE_MTRR | DRIVER_PCI_DMA |
	    DRIVER_HAVE_DMA | DRIVER_HAVE_IRQ | DRIVER_IRQ_SHARED |
	    DRIVER_IRQ_VBL,
	.dev_priv_size = sizeof (drm_mga_buf_priv_t),
	.load = mga_driver_load,
	.unload = mga_driver_unload,
	.lastclose = mga_driver_lastclose,
	.dma_quiescent = mga_driver_dma_quiescent,
	.device_is_agp = mga_driver_device_is_agp,
	.vblank_wait = mga_driver_vblank_wait,
	.irq_preinstall = mga_driver_irq_preinstall,
	.irq_postinstall = mga_driver_irq_postinstall,
	.irq_uninstall = mga_driver_irq_uninstall,
	.irq_handler = mga_driver_irq_handler,
	.reclaim_buffers = drm_core_reclaim_buffers,
	.get_map_ofs = drm_core_get_map_ofs,
	.get_reg_ofs = drm_core_get_reg_ofs,
	.ioctls = mga_ioctls,
	.dma_ioctl = mga_dma_buffers,
	.fops = {
		.owner = THIS_MODULE,
		.open = drm_open,
		.release = drm_release,
		.ioctl = drm_ioctl,
		.mmap = drm_mmap,
		.poll = drm_poll,
		.fasync = drm_fasync,
#if defined(CONFIG_COMPAT) && LINUX_VERSION_CODE > KERNEL_VERSION(2,6,9)
		.compat_ioctl = mga_compat_ioctl,
#endif
		},
	.pci_driver = {
		.name = DRIVER_NAME,
		.id_table = pciidlist,
		.probe = probe,
		.remove = __devexit_p(drm_cleanup_pci),
	},

	.name = DRIVER_NAME,
	.desc = DRIVER_DESC,
	.date = DRIVER_DATE,
	.major = DRIVER_MAJOR,
	.minor = DRIVER_MINOR,
	.patchlevel = DRIVER_PATCHLEVEL,
};

static int probe(struct pci_dev *pdev, const struct pci_device_id *ent)
{
	return drm_get_dev(pdev, ent, &driver);
}


static int __init mga_init(void)
{
	driver.num_ioctls = mga_max_ioctl;
	return drm_init(&driver, pciidlist);
}

static void __exit mga_exit(void)
{
	drm_exit(&driver);
}

module_init(mga_init);
module_exit(mga_exit);

MODULE_AUTHOR(DRIVER_AUTHOR);
MODULE_DESCRIPTION(DRIVER_DESC);
MODULE_LICENSE("GPL and additional rights");

/**
 * Determine if the device really is AGP or not.
 *
 * In addition to the usual tests performed by \c drm_device_is_agp, this
 * function detects PCI G450 cards that appear to the system exactly like
 * AGP G450 cards.
 *
 * \param dev   The device to be tested.
 *
 * \returns
 * If the device is a PCI G450, zero is returned.  Otherwise 2 is returned.
 */
static int mga_driver_device_is_agp(drm_device_t * dev)
{
	const struct pci_dev * const pdev = dev->pdev;


	/* There are PCI versions of the G450.  These cards have the
	 * same PCI ID as the AGP G450, but have an additional PCI-to-PCI
	 * bridge chip.  We detect these cards, which are not currently
	 * supported by this driver, by looking at the device ID of the
	 * bus the "card" is on.  If vendor is 0x3388 (Hint Corp) and the
	 * device is 0x0021 (HB6 Universal PCI-PCI bridge), we reject the
	 * device.
	 */
	
	if ((pdev->device == 0x0525) && pdev->bus->self
	     && (pdev->bus->self->vendor == 0x3388)
	     && (pdev->bus->self->device == 0x0021) ) {
		return 0;
	}

	return 2;
}
t">++) { if (global_ppriv[i].used && global_ppriv[i].context == context) { retval = setAdd(global_ppriv[i].sets[type], val); break; } } return retval; } static int del_alloc_set(int context, int type, unsigned int val) { int i, retval = 0; for (i = 0; i < MAX_CONTEXT; i++) { if (global_ppriv[i].used && global_ppriv[i].context == context) { retval = setDel(global_ppriv[i].sets[type], val); break; } } return retval; } /* fb management via fb device */ #if defined(__linux__) && defined(CONFIG_FB_SIS) int sis_fb_init( DRM_IOCTL_ARGS ) { return 0; } int sis_fb_alloc( DRM_IOCTL_ARGS ) { drm_sis_mem_t fb; struct sis_memreq req; drm_sis_mem_t __user *argp = (void __user *)data; int retval = 0; DRM_COPY_FROM_USER_IOCTL(fb, argp, sizeof(fb)); req.size = fb.size; sis_malloc(&req); if (req.offset) { /* TODO */ fb.offset = req.offset; fb.free = req.offset; if (!add_alloc_set(fb.context, VIDEO_TYPE, fb.free)) { DRM_DEBUG("adding to allocation set fails\n"); sis_free(req.offset); retval = DRM_ERR(EINVAL); } } else { fb.offset = 0; fb.size = 0; fb.free = 0; } DRM_COPY_TO_USER_IOCTL(argp, fb, sizeof(fb)); DRM_DEBUG("alloc fb, size = %d, offset = %ld\n", fb.size, req.offset); return retval; } int sis_fb_free( DRM_IOCTL_ARGS ) { drm_sis_mem_t fb; int retval = 0; DRM_COPY_FROM_USER_IOCTL(fb, (drm_sis_mem_t __user *)data, sizeof(fb)); if (!fb.free) return DRM_ERR(EINVAL); if (!del_alloc_set(fb.context, VIDEO_TYPE, fb.free)) retval = DRM_ERR(EINVAL); sis_free(fb.free); DRM_DEBUG("free fb, offset = 0x%lx\n", fb.free); return retval; } #else /* Called by the X Server to initialize the FB heap. Allocations will fail * unless this is called. Offset is the beginning of the heap from the * framebuffer offset (MaxXFBMem in XFree86). * * Memory layout according to Thomas Winischofer: * |------------------|DDDDDDDDDDDDDDDDDDDDDDDDDDDDD|HHHH|CCCCCCCCCCC| * * X driver/sisfb HW- Command- * framebuffer memory DRI heap Cursor queue */ int sis_fb_init( DRM_IOCTL_ARGS ) { DRM_DEVICE; drm_sis_private_t *dev_priv = dev->dev_private; drm_sis_fb_t fb; DRM_COPY_FROM_USER_IOCTL(fb, (drm_sis_fb_t __user *)data, sizeof(fb)); if (dev_priv == NULL) { dev->dev_private = DRM(calloc)(1, sizeof(drm_sis_private_t), DRM_MEM_DRIVER); dev_priv = dev->dev_private; if (dev_priv == NULL) return ENOMEM; } if (dev_priv->FBHeap != NULL) return DRM_ERR(EINVAL); dev_priv->FBHeap = mmInit(fb.offset, fb.size); DRM_DEBUG("offset = %u, size = %u", fb.offset, fb.size); return 0; } int sis_fb_alloc( DRM_IOCTL_ARGS ) { DRM_DEVICE; drm_sis_private_t *dev_priv = dev->dev_private; drm_sis_mem_t __user *argp = (void __user *)data; drm_sis_mem_t fb; PMemBlock block; int retval = 0; if (dev_priv == NULL || dev_priv->FBHeap == NULL) return DRM_ERR(EINVAL); DRM_COPY_FROM_USER_IOCTL(fb, argp, sizeof(fb)); block = mmAllocMem(dev_priv->FBHeap, fb.size, 0, 0); if (block) { /* TODO */ fb.offset = block->ofs; fb.free = (unsigned long)block; if (!add_alloc_set(fb.context, VIDEO_TYPE, fb.free)) { DRM_DEBUG("adding to allocation set fails\n"); mmFreeMem((PMemBlock)fb.free); retval = DRM_ERR(EINVAL); } } else { fb.offset = 0; fb.size = 0; fb.free = 0; } DRM_COPY_TO_USER_IOCTL(argp, fb, sizeof(fb)); DRM_DEBUG("alloc fb, size = %d, offset = %d\n", fb.size, fb.offset); return retval; } int sis_fb_free( DRM_IOCTL_ARGS ) { DRM_DEVICE; drm_sis_private_t *dev_priv = dev->dev_private; drm_sis_mem_t fb; if (dev_priv == NULL || dev_priv->FBHeap == NULL) return DRM_ERR(EINVAL); DRM_COPY_FROM_USER_IOCTL(fb, (drm_sis_mem_t __user *)data, sizeof(fb)); if (!mmBlockInHeap(dev_priv->FBHeap, (PMemBlock)fb.free)) return DRM_ERR(EINVAL); if (!del_alloc_set(fb.context, VIDEO_TYPE, fb.free)) return DRM_ERR(EINVAL); mmFreeMem((PMemBlock)fb.free); DRM_DEBUG("free fb, free = 0x%lx\n", fb.free); return 0; } #endif /* agp memory management */ int sis_ioctl_agp_init( DRM_IOCTL_ARGS ) { DRM_DEVICE; drm_sis_private_t *dev_priv = dev->dev_private; drm_sis_agp_t agp; if (dev_priv == NULL) { dev->dev_private = DRM(calloc)(1, sizeof(drm_sis_private_t), DRM_MEM_DRIVER); dev_priv = dev->dev_private; if (dev_priv == NULL) return ENOMEM; } if (dev_priv->AGPHeap != NULL) return DRM_ERR(EINVAL); DRM_COPY_FROM_USER_IOCTL(agp, (drm_sis_agp_t __user *)data, sizeof(agp)); dev_priv->AGPHeap = mmInit(agp.offset, agp.size); DRM_DEBUG("offset = %u, size = %u", agp.offset, agp.size); return 0; } int sis_ioctl_agp_alloc( DRM_IOCTL_ARGS ) { DRM_DEVICE; drm_sis_private_t *dev_priv = dev->dev_private; drm_sis_mem_t __user *argp = (void __user *)data; drm_sis_mem_t agp; PMemBlock block; int retval = 0; if (dev_priv == NULL || dev_priv->AGPHeap == NULL) return DRM_ERR(EINVAL); DRM_COPY_FROM_USER_IOCTL(agp, argp, sizeof(agp)); block = mmAllocMem(dev_priv->AGPHeap, agp.size, 0, 0); if (block) { /* TODO */ agp.offset = block->ofs; agp.free = (unsigned long)block; if (!add_alloc_set(agp.context, AGP_TYPE, agp.free)) { DRM_DEBUG("adding to allocation set fails\n"); mmFreeMem((PMemBlock)agp.free); retval = -1; } } else { agp.offset = 0; agp.size = 0; agp.free = 0; } DRM_COPY_TO_USER_IOCTL(argp, agp, sizeof(agp)); DRM_DEBUG("alloc agp, size = %d, offset = %d\n", agp.size, agp.offset); return retval; } int sis_ioctl_agp_free( DRM_IOCTL_ARGS ) { DRM_DEVICE; drm_sis_private_t *dev_priv = dev->dev_private; drm_sis_mem_t agp; if (dev_priv == NULL || dev_priv->AGPHeap == NULL) return DRM_ERR(EINVAL); DRM_COPY_FROM_USER_IOCTL(agp, (drm_sis_mem_t __user *)data, sizeof(agp)); if (!mmBlockInHeap(dev_priv->AGPHeap, (PMemBlock)agp.free)) return DRM_ERR(EINVAL); mmFreeMem((PMemBlock)agp.free); if (!del_alloc_set(agp.context, AGP_TYPE, agp.free)) return DRM_ERR(EINVAL); DRM_DEBUG("free agp, free = 0x%lx\n", agp.free); return 0; } int sis_init_context(struct drm_device *dev, int context) { int i; for (i = 0; i < MAX_CONTEXT ; i++) { if (global_ppriv[i].used && (global_ppriv[i].context == context)) break; } if (i >= MAX_CONTEXT) { for (i = 0; i < MAX_CONTEXT ; i++) { if (!global_ppriv[i].used) { global_ppriv[i].context = context; global_ppriv[i].used = 1; global_ppriv[i].sets[0] = setInit(); global_ppriv[i].sets[1] = setInit(); DRM_DEBUG("init allocation set, socket=%d, " "context = %d\n", i, context); break; } } if ((i >= MAX_CONTEXT) || (global_ppriv[i].sets[0] == NULL) || (global_ppriv[i].sets[1] == NULL)) { return 0; } } return 1; } int sis_final_context(struct drm_device *dev, int context) { int i; for (i=0; i<MAX_CONTEXT; i++) { if (global_ppriv[i].used && (global_ppriv[i].context == context)) break; } if (i < MAX_CONTEXT) { set_t *set; ITEM_TYPE item; int retval; DRM_DEBUG("find socket %d, context = %d\n", i, context); /* Video Memory */ set = global_ppriv[i].sets[0]; retval = setFirst(set, &item); while (retval) { DRM_DEBUG("free video memory 0x%lx\n", item); #if defined(__linux__) && defined(CONFIG_FB_SIS) sis_free(item); #else mmFreeMem((PMemBlock)item); #endif retval = setNext(set, &item); } setDestroy(set); /* AGP Memory */ set = global_ppriv[i].sets[1]; retval = setFirst(set, &item); while (retval) { DRM_DEBUG("free agp memory 0x%lx\n", item); mmFreeMem((PMemBlock)item); retval = setNext(set, &item); } setDestroy(set); global_ppriv[i].used = 0; } return 1; } void DRM(driver_register_fns)(drm_device_t *dev) { dev->driver_features = DRIVER_USE_AGP | DRIVER_USE_MTRR; dev->fn_tbl.context_ctor = sis_init_context; dev->fn_tbl.context_dtor = sis_final_context; }